论文标题
秘密交流中的多人安德纳纳
Multi-Antenna Jamming in Covert Communication
论文作者
论文摘要
秘密沟通掩盖了从爱丽丝到鲍勃的传输从警惕的对手威利(Willie)传输,后者试图确定是否发生了传输。尽管威利(Willie)已知所有变量的基本香草环境中的秘密交流,但会导致众所周知的正方形法律,而当存在干扰器并通过在威利(Willie)解码器中造成不确定性来帮助爱丽丝(Alice)时,可能会出现严格的正传输率。 在这项工作中,我们分析了干扰器配备多个天线的情况。具体而言,我们分析了干扰器对爱丽丝传输功率的多个天线的影响,从而分析了传输速率。我们考虑两种情况,其中一种频道知识是已知的,而干扰器不知道的情况。我们为干扰器的传输策略制定了几个优化问题,以最大程度地提高威利和鲍勃的噪声方差的比率,以最大程度地提高他对爱丽丝的帮助。 当干扰器已知通道信息时,我们表明干扰器的最佳策略是用他所有可用的力量对单个方向进行束缚。但是,这个方向并不是微不足道的,因为它反映了最大程度地减少鲍勃的干扰和最大化威利干扰的最佳权衡点。当通道知识未知时,我们表明干扰器的最佳策略要么在各向异性上传输到所有方向或BOB的空空间,在此选择取决于某些通道条件。这与文献中目前的方案相反。此外,我们将优化问题扩展到BOB还配备多个天线并提供有见地的结果,并伴有模拟的有见地的结果。
Covert communication conceals transmission of messages from Alice to Bob out of a watchful adversary, Willie, who tries to determine if a transmission took place or not. While covert communication in a basic, vanilla setting where all variables are known to Willie, results in the well-known square-root law, when a jammer is present and assists Alice by creating uncertainty in Willie's decoder, a strictly positive transmission rate is possible. In this work, we analyze the case where the jammer is equipped with multiple antennas. Specifically, we analyze the effect of multiple antennas at the jammer on Alice's transmission power and consequently on the transmission rate. We consider both cases, one in which the channel knowledge is known and one in which it is unknown by the jammer. We formulate several optimization problems for the transmission strategies of the jammer, to maximize his assistance to Alice, in terms of maximizing a ratio between Willie's and Bob's noise variances. When the channel information is known to the jammer, we show that the optimal strategy of the jammer is to perform beamforming towards a single direction with all his available power. This direction though, is not trivial, since it reflects an optimal tradeoff point between minimizing the interference at Bob and maximizing the interference at Willie. When the channel knowledge is unknown, we show that the optimal strategy of the jammer is either to transmit isotropically to all directions or to the null-space of Bob, where this choice depends on certain channel conditions. This is in contrast to current schemes in the literature. Furthermore, we extend the optimization problems to the case where Bob is also equipped with multiple antennas, and provide insightful results, shown to be asymptotically optimal, accompanied by simulations.